VANEAXIAL & TUBEAXIAL FANS

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1 BULLETIN 482 July 2008 VANEAXIAL & TUBEAXIAL FANS Type "S" Belt Driven Featuring Welded Steel Propellers Models VSBD & TSBD Model TSBD Belt Driven Tubeaxial

2 Type "S" Vaneaxial & Tubeaxial Fans For applications requiring extensive corrosion resistance or operation at higher temperatures than standard, the Arrangement 9 VSBD/TSBD is the perfect choice. Standard construction is good for operation to 200 F; fans can be customized to handle up to 300 F. Steel construction is standard, all stainless steel construction is available. Driven by either a fixed or adjustable V-belt drive system, the exact point of rating can be achieved. A future change in rating can be accomplished through a simple sheave change. Steel Propellers Steel propellers are manufactured with a spun steel hub. Steel blades are welded to the hub and can be attached at precise angles ranging from 30 to 50. This ability to customize blade angles provides the highest efficiency for a given performance. Housing Fan housings are constructed of continuously welded, heavy gauge steel for strength and rigidity. Flanges on both the inlet and outlet are integrally rolled and punched for attachment to ductwork or accessories. Shafts Fan shafts are ground and polished 1045 steel sized to allow the rotating assembly to operate a minimum of 43% below the first critical speed. Bearings Cast iron, re-greasable flange mounted ball or roller type bearings have a minimum L-10 life of 40,000 hours. This is equivalent to an average life of 200,000 hours. Extended lubrication lines terminate at the housing exterior. Drive Isolated from Airstream The shaft and bearing assembly is mounted within the inner cylinder to isolate these components from the high velocity airstream. The V-belt drive assembly is extended through a two-piece belt fairing. The belt fairing is an aerodynamically designed tube, designed to maximize fan efficiency, minimize air blockage and reduce noise generation. Motors A variety of single- and three-phase motors is available in open drip-proof (ODP), explosion-proof (EXP), and totally enclosed fan cooled (TEFC) enclosures. An adjustable mounting platform pivots to allow infinite belt tension adjustment. Hub-to-Tip Ratio Wheels are manufactured from one of four hub sizes. Hubs are machined and cut to the specified diameter for a job. Blades are die-formed stamped steel and custom cut to their specified size. Fabricating wheels from custom sized blades and hubs allows the creation of wheels with an infinite range of hub-to-tip ratios. Since each hub-to-tip ratio has a slightly different pressure/efficiency characteristic, the freedom of having several wheels with different hub-to-tip ratios for a set diameter allows maximum efficiency at the required point of rating. For additional hub-to-tip ratios refer to the Aerovent Fan Selector Program. Guide Vanes VSBD vaneaxial fans are fitted with straightening guide vanes. The vanes are aerodynamically placed within the housing on the discharge side of the wheel. Vanes are stationary and welded to both the inner and outer cylinders. The straightening effect of the vanes aids in minimizing turbulence downstream from the fan thereby recovering rotative energy imparted to the air by the wheel. TSVSSH/TSTSSH Specifically designed for smoke control applications. UL/cUL listed for smoke control systems for 500 º F for 4 hours or 1000 º F for 15 minutes. Models VSBD and TSBD are available with the UL/CUL 705 listing for electrical, File No. E Aerovent 482

3 Accessories Inlet Bell For systems with no ductwork on the fan inlet, it is required to install an inlet bell to avoid inlet losses. The inlet bell is a torosoidal shape to provide a smooth entrance to the fan. Inlet bells are flanged and drilled to mate with the fan s flanged inlet. Inlet/Outlet Cone A round-to-round transition bolted to the inlet or discharge flange of the fan housing provides a smooth connection of the fan to larger or smaller ductwork. Cones are flanged on both ends and drilled to mate with the fan s flange. Cones are available with an access door if required. Outlet cones can be utilized to affect performance and transform velocity pressure into static pressure. Companion Flanges For ease of installation of adjacent ductwork, companion flanges can be provided. Flanges are rolled angle rings, drilled to match the fan s inlet or outlet flange. Variable Inlet Vane For frequent or continuous volume control a variable inlet vane can be provided. The vane action during dampering works to spin the air in the direction of the wheel rotation, thus resulting in lower power consumption. Variable inlet vanes are available for each specific fan size and are bolted to the fan s flanged inlet. The variable inlet vane s inlet is flanged and drilled to accept ductwork or an inlet bell as the system requires. The vane mechanism is outside of the airstream and is controlled by a single vane lever. Variable inlet vanes can be set up for manual or automatic operation. Sound Attenuation For applications requiring quiet operation, custom-built attenuation packages can be provided on the fan inlet or outlet. Attenuators are aerodynamically and acoustically matched to the specific system requirements and are designed to significantly reduce noise while adding only minor resistance to airflow. Support Legs Horizontal Flow For horizontal flow with floor mounting, support legs are welded to the fan flange with bolt holes aligned for connection of ductwork. Vertical Flow For vertical flow with either floor or ceiling mounting, support legs are welded to the fan housing for four-point support. See page 13 for a description of how to identify the location of the legs. Suspension Clips For horizontal flow with ceiling mounting, four clips of formed angle are welded to the fan housing for suspension via ties to the ceiling support structure. Vibration Isolation All fans can be provided with spring or rubber-in-shear isolators as an option. Spring isolators are standard in deflection and can be provided for floor mount or ceiling (hung) orientation. Use of isolators requires flexible duct connectors on attached ductwork. Avoid flexible connectors, which can collapse on the inlet side of the fan. Belt Guard For Arrangement 9 belt driven fans, the belt guard encloses the motor sheave and V-belts. The guard is easily removable for inspection and maintenance. Aerovent 482 3

4 Accessories Weather Cover For outdoor installations, the weather cover completely encloses the motor and V-belt drive from the elements. Provided with slots for ventilation, the cover is easily removable for inspection and maintenance. Weather covers are available for either horizontal or vertical flow fans. Screening Safety screening can be provided for installation in the fan inlet, fan outlet, cone, or bell. Clamshell Construction Clamshell construction provides complete accessibility to the internal components of the fan. Housing Doors General Observation Door For inspection and maintenance of the internal section (V-belt drive area) of units, a general observation access door can be provided. Doors are 5" x 5" for fans sizes 1 to 18" and 8" x 8" for all others. Doors are gasketed, single-skinned, and bolted in place to the housing exterior. As standard, doors are located adjacent to the motor base. Propeller Area Door Similar in size and attachment to the general observation access door, a wheel area access door is also available. Wheel area doors differ from general observation doors in that they are double-skinned to maintain a flush surface to the housing interior, thus eliminating the pressure losses resulting from a single-skinned door in this critical pressure developing area. Shaft Seal To limit air entering the inner cylinder and avoid contact of airstream contaminants with the bearings and V-belt drive, a shaft seal can be provided. The shaft seal consists of a non-asbestos rubbing ring at the wheel end of the inner cylinder held in place by a cover plate. Please note that a shaft seal does not make the inner cylinder gas tight. High Temperature Construction Units can be customized to handle up to 300 F continuous in the airstream. Discharge Cap Units can be provided with a discharge cap for rooftop mounting. Discharge caps are designed for vertical discharge with two backdraft dampers to seal out the weather when the fan is shut off. See page 6 for minimum flow (CFM) requirements. Curb Cap Units can be supplied with a base (curb cap), attached to the fan s flange for curb mounting. The combination of a curb cap and discharge cap creates an upblaststyle power roof ventilator. UL/CUL 705 Listing Models VSBD and TSBD are available with the UL/CUL 705 listing for electrical when supplied with specific motors. 4 Aerovent 482

5 Fan Selection Model Nomenclature VSBD/TSBD Arrangement 9 model numbers are represented as follows. Refer to the Hub-To-Tip Ratio section on page 2 for an explanation of hub-to-tip ratios. 36 B 6 Useful Formulas Total Pressure (TP) = Static Pressure (SP) + Velocity Pressure (VP) Velocity (Vel.) = CFM Area in ft 2 Velocity Pressure (VP) = 2 Vel. x Density in lbs/ft 3 ( Efficiency = CFM x Pressure (in. w.g.) 6356 x Brake Horsepower Where total (or mechanical) efficiency is calculated using total pressure and static efficiency is calculated using static pressure. Sample Selections ( Approximation of Hub-To-Tip Ratio Where: 3 ~ = 40%, 4 ~ = 43%, 5 = 50% 6 ~ = 57%, 7 ~ = 66% B = Belt Driven (Arr. 9) Fan Diameter (inches) The following examples illustrate conditions that may be encountered with Arrangement 9 VSBD/TSBD fans. For additional performance corrections refer to the Aerovent Fan Selector Program. Example 1: Make the most efficient selection for an Arrangement 9 VSBD at 10,000 CFM and SP at standard conditions (0.075 lb/ft 3 density). By looking through the VSBD tables for fans that meet this performance we find: Fan Size RPM BHP Blade Angle 21B B B B Comparing these fans, we find that the 30B4 is the most efficient (lowest horsepower) selection. Example 2: Make the optimum selection for an Arrangement 9 TSBD at 11,000 CFM and SP at 150 F and 10,000 feet elevation. Using the Temperature and Altitude Density Ratios table on page 6, we establish a factor of Dividing the operating SP by this factor ( ) = equivalent SP at standard air and density. By looking through the TSBD tables for fans that meet a performance of 11,000 CFM at SP, we find: Fan Size RPM BHP Blade Angle 21B B B B Comparing these fans, we find that the 30B4 is the most efficient (lowest horsepower) selection. The horsepower shown above (often referred to as cold or starting horsepower) is the horsepower required at standard air density (0.075 lb/ft 3 ). However, the actual BHP at the operating conditions of 150 F and 10,000 feet elevation will be 7.06 x 5.98 = 4.22 BHP. Example 3: Select a VSBD fan, without a cone, for 10,000 CFM at SP and a maximum outlet velocity of 2400 FPM at standard conditions (0.075 lb/ft 3 ). Start by calculating the area required for 2400 FPM. Area = CFM OV = 10, = 4.17 ft 2 Using the cone and outlet dimensions from the table on page 14, we see that the outlet area for a 28" fan matches 4.17 ft 2 the closest without going under. Turning to page 8 for the 28B6 fan size and looking up 10,000 SP yields the following interpolated selection: 28B blade angle Example 4: Using the same criteria as Example 3, 10,000 CFM at SP and a maximum outlet velocity of 2400 FPM at standard conditions (0.075 lb/ft 3 ), select a fan with a coned outlet. Taking the next smaller fan size, 24B5, from the table on page 14 find the outlet area to be 3.19 ft 2. fan = 10, = 3135 FPM VPfan = ( ) 2 x = 0.6 w.g. VPcone = ( ) 2 x = 0.36" w.g. SPregain* = VPfan VPcone = = w.g. Turning to the table for a 24B5 VSBD on page 8 and looking up 10,000 CFM at SP (-), through interpolation we find: 24B blade angle We could continue in this method to the next smaller fan size, 21B6 (assuming the same cone to 2400 FPM). In this case, our static pressure including regain is 0.8 SP, which yields the following: 21B blade angle An educated review would then determine the premium selection based on considerations of first cost vs. power consumption vs. space allotment, etc. Please note that this explanation does not take into consideration any inherent ductwork or energy conversion losses. This exact SP regain amount should be factored by a predetermined percentage based on the actual cone geometry. Aerovent 482 5

6 Engineering Data Temperature & Altitude Density Ratios ALTITUDE IN FEET ABOVE SEA LEVEL AIR TEMP BAROMETRIC PRESSURE IN INCHES OF MERCURY F Bare Fan Weights (lb) FAN SIZE 12B7 15B6 18B5 21B6 24B5 28B6 30B4 32B5 36B6 42B3 48B4 54B3 TSBD VSBD Accessory Weights (lb) INLET/ INLET/ SUPPORT LEGS VARIABLE DIS- FAN BELT WEATHER INLET COMPANION CURB OUTLET OUTLET HORIZ. VERT. INLET CHARGE SIZE GUARD COVER BELL FLANGE CAP SCREEN CONE FLOW FLOW VANES CAP Motor Weights (lb) FRAME T 145T 182T 184T 213T 215T 254T ODP TE FRAME 256T 284T 286T 324T 326T 364T 365T ODP TE Performance Charts The Arrangement 9 performance charts in this catalog are based on standard air density which is defined by AMCA as that of dry air of 70 F and sea level pressure (29.92 inches of mercury). This is equal to a density value of lbs./cu.ft. Housing Gauges FAN HOUSING SIZE GAUGE Minimum CFM to Open Discharge Cap FAN SIZE STAINLESS ALUMINUM DAMPER DAMPER When required performance is at other than standard conditions, the values must be converted to equivalent standard values before entering the tables, and then reconverted back to the actual conditions after the specific selection is made. The chart of temperature and altitude corrections above should be used for this purpose with Example #2 on page 5 displaying this procedure. 6 Aerovent 482

7 Performance Data VSBD Vaneaxial VSBD 12B7 Wheel Dia.: 1 Outlet Area: ft 2 Tip Speed: 3.14 x RPM 0.50" Regular type face = Class I, max. RPM 4455 Bold type face = Class II, max. RPM 5729 VSBD 15B6 Wheel Dia.: 15" Outlet Area: ft 2 Tip Speed: 3.93 x RPM Regular type face = Class I, max. RPM 3540 Bold type face = Class II, max. RPM VSBD 18B5 Wheel Dia.: 18" Outlet Area: ft 2 Tip Speed: 4.71 x RPM Regular type face = Class I, max. RPM 2949 Bold type face = Class II, max. RPM " VSBD 21B6 Wheel Dia.: 2 Outlet Area: ft 2 Tip Speed: 5.5 x RPM Regular type face = Class I, max. RPM 2526 Bold type face = Class II, max. RPM Performance is for VSBD units with inlet and outlet ducts. BHP shown is a fan shaft brake horsepower and does not include belt drive losses. Aerovent 482 7

8 VSBD 24B5 Wheel Dia.: 2 Outlet Area: ft 2 Tip Speed: 6.28 x RPM Regular type face = Class I, max. RPM 2220 Bold type face = Class II, max. RPM VSBD 28B6 Wheel Dia.: 28" Outlet Area: ft 2 Tip Speed: 7.33 x RPM Regular type face = Class I, max. RPM 1895 Bold type face = Class II, max. RPM VSBD 30B4 Wheel Dia.: 30" Outlet Area: 4.97 ft 2 Tip Speed: 7.85 x RPM Regular type face = Class I, max. RPM 1783 Bold type face = Class II, max. RPM " VSBD 32B5 Wheel Dia.: 3 Outlet Area: ft 2 Tip Speed: 8.38 x RPM Regular type face = Class I, max. RPM 1659 Bold type face = Class II, max. RPM Performance is for VSBD units with inlet and outlet ducts. BHP shown is a fan shaft brake horsepower and does not include belt drive losses. 8 Aerovent 482

9 VSBD 36B6 Wheel Dia.: 36" Outlet Area: ft 2 Tip Speed: 9.42 x RPM Regular type face = Class I, max. RPM 1474 Bold type face = Class II, max. RPM VSBD 42B3 Wheel Dia.: 4 Outlet Area: ft 2 Tip Speed: x RPM 1.75" 2.25" Regular type face = Class I, max. RPM 1272 Bold type face = Class II, max. RPM VSBD 48B4 Wheel Dia.: 48" Outlet Area: ft 2 Tip Speed: x RPM Regular type face = Class I, max. RPM 1114 Bold type face = Class II, max. RPM VSBD 54B3 Wheel Dia.: 5 Outlet Area: ft 2 Tip Speed: x RPM Regular type face = Class I, max. RPM 990 Bold type face = Class II, max. RPM " " Performance is for VSBD units with inlet and outlet ducts. BHP shown is a fan shaft brake horsepower and does not include belt drive losses. Aerovent 482 9

10 Performance Data TSBD Tubeaxial TSBD 12B7 Wheel Dia.: 1 Outlet Area: ft 2 Tip Speed: 3.14 x RPM Regular type face = Class I, max. RPM 4455 Bold type face = Class II, max. RPM " " " TSBD 15B6 Wheel Dia.: 15" Outlet Area: ft 2 Tip Speed: 3.93 x RPM Regular type face = Class I, max. RPM 3540 Bold type face = Class II, max. RPM TSBD 18B5 Wheel Dia.: 18" Outlet Area: ft 2 Tip Speed: 4.71 x RPM Regular type face = Class I, max. RPM 2949 Bold type face = Class II, max. RPM TSBD 21B6 Wheel Dia.: 2 Outlet Area: ft 2 Tip Speed: 5.50 x RPM Regular type face = Class I, max. RPM 2526 Bold type face = Class II, max. RPM Performance is for TSBD units with inlet and outlet ducts. BHP shown is a fan shaft brake horsepower and does not include belt drive losses. 10 Aerovent 482

11 TSBD 24B5 Wheel Dia.: 2 Outlet Area: ft 2 Tip Speed: 6.28 x RPM Regular type face = Class I, max. RPM 2220 Bold type face = Class II, max. RPM TSBD 28B6 Wheel Dia.: 28" Outlet Area: ft 2 Tip Speed: 7.33 x RPM Regular type face = Class I, max. RPM 1895 Bold type face = Class II, max. RPM TSBD 30B4 Wheel Dia.: 30" Outlet Area: 4.97 ft 2 Tip Speed: 7.85 x RPM Regular type face = Class I, max. RPM 1783 Bold type face = Class II, max. RPM " TSBD 32B5 Wheel Dia.: 3 Outlet Area: ft 2 Tip Speed: 8.38 x RPM Regular type face = Class I, max. RPM 1659 Bold type face = Class II, max. RPM Performance is for TSBD units with inlet and outlet ducts. BHP shown is a fan shaft brake horsepower and does not include belt drive losses. Aerovent

12 TSBD 36B6 Wheel Dia.: 36" Outlet Area: ft 2 Tip Speed: 9.42 x RPM RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG RPM BHP ANG Regular type face = Class I, max. RPM 1474 Bold type face = Class II, max. RPM TSBD 42B3 Wheel Dia.: 4 Outlet Area: ft 2 Tip Speed: x RPM Regular type face = Class I, max. RPM 1272 Bold type face = Class II, max. RPM " " TSBD 48B4 Wheel Dia.: 48" Outlet Area: ft 2 Tip Speed: x RPM Regular type face = Class I, max. RPM 1114 Bold type face = Class II, max. RPM " TSBD 54B3 Wheel Dia.: 5 Outlet Area: ft 2 Tip Speed: x RPM Regular type face = Class I, max. RPM 990 Bold type face = Class II, max. RPM ` " " Performance is for TSBD units with inlet and outlet ducts. BHP shown is a fan shaft brake horsepower and does not include belt drive losses. 12 Aerovent 482

13 Dimensional Data Tubeaxial & Vaneaxial MOTOR LOC. "A" O.D. FLANGE DIA. B.C. INSIDE DUCT ROTATION G MAX. G H F A E B D C C D B HORIZONTAL MOTOR LOCATIONS (VIEWED FROM FAN OUTLET) A VSBD/TSBD ARR. 9 HORIZONTAL HORIZONTAL DISCHARGES HOR = Horizontal No Clips or Legs HCH = Horizontal Ceiling Hung with Suspension Clips HBM = Horizontal Base Mounted with Support Legs D O.D. FLANGE C DIA. B.C. FLANGE INSIDE DUCT B VDO VDN VDI A VSBD/TSBD ARR. 9 VERTICAL VDO = Vertical Down Floor Mounted With Legs VDN = Vertical Down Discharge Without Legs VDI = Vertical Down Ceiling Hung With Legs VERTICAL DISCHARGES VUI VUN VUO VUI = Vertical Up Floor Mounted With Legs VUN = Vertical Up Discharge Without Legs VUO = Vertical Up Ceiling Hung With Legs A MAXIMUM FAN G HUB RATIO B C D MOTOR SIZE (MAX.) FRAME 12 NA T 15 NA T T T T T NA T T T NA T NA T NA T DIMENSIONS ARE NOT TO BE USED FOR CONSTRUCTION. CERTIFIED DRAWINGS AVAILABLE UPON REQUEST. Aerovent

14 Dimensional Data (N) "P" DIA. HOLES EQUALLY SPACED STRADDLING CENTERLINE F R S J O.D. FLANGE DIA. B.C. INSIDE DUCT L M K INSIDE FLANGE E T CONE COMPANION VARIABLE INLET BELL FLANGE INLET VANE VARIABLE COMPANION INLET FAN CONE FAN CONE INLET FLANGE BELL AREA AREA SIZE VANE (FT 2 ) (FT 2 ) E F J K L M N P R S T NA NA DIMENSIONS ARE NOT TO BE USED FOR CONSTRUCTION. CERTIFIED DRAWINGS AVAILABLE UPON REQUEST. AC13716M 14 Aerovent 482

15 Typical Specifications Fans shall be Type VSBD Vaneaxial or TSBD Tubeaxial, fixed pitch, steel wheel, as manufactured by Aerovent, Minneapolis, Minnesota. Fans shall be Arrangement 9, V-belt driven with the wheel mounted on a separate shaft and bearings supported completely within an enclosed tube isolated from the high velocity airstream. PERFORMANCE Fans shall be tested and rated in accordance with industry accepted test codes and shall be guaranteed by the manufacturer to deliver rated published performance levels. Models VSBD and TSBD shall be available UL/CUL 705 listed. HOUSING Housings shall be welded of 14 gauge ASTM A-569 hot rolled steel in size 1 diameter, 12 gauge hot rolled steel in sizes 15" through 2 diameter, 10 gauge hot rolled steel in sizes 2 through 36" diameter, and 7 gauge hot rolled steel in sizes 4 through 5 diameter. Inlet and outlet flanges shall be of welded angle ring construction in fan sizes 1 and 15" diameter. In sizes 18" through 5 diameter inlet and outlet flanges shall be integrally rolled mechanically from fan housing sheet steel to insure concentricity and alignment of flanges. Concentricity of housings shall be insured through the use of welding jigs and fixtures. A fabricated adjustable steel motor support platform of minimum 3 16" steel plate shall be provided to offer infinite adjustment of belt tension. Housings shall be fitted with mounting legs, hanging clips, or flange mounted as shown on the drawings. Fan mounting legs and clips shall be fabricated from minimum 12 gauge steel plate suitably braced to insure stability and rigidity. GUIDE VANES On Type VSBD fans the housing shall be fitted with aerodynamically designed stationary straightening guide vanes on the air discharge side of the wheel. The guide vanes shall be welded to both the inner cylinder and the fan housing interior. Guide vanes function to aid in the elimination of swirl and turbulence downstream of the fan thereby recovering rotational energy losses, improving efficiency and static pressure capability, and reducing fan noise generation. WHEEL The wheel shall be a fabrication consisting of die-formed stamped steel blades of single-surface airfoil shape welded to a spun steel central hub. Precise blade attachment shall be insured through the use of welding jigs and fixtures. The ability to provide various factory-set blade angles ranging from 30 to 50 allows the highest possible latitude in selection and provides fan operation at the highest possible efficiency. All wheels are statically and dynamically balanced prior to assembly. Fans with motors and drives mounted by Aerovent are test run as a complete assembly and rechecked for balance at the specified operating speed. SHAFT Shafts shall be AISI 1045 hot rolled steel, accurately turned, ground, polished, and ring gauged for accuracy. Shafts shall be sized for the first critical speed of at least 1.43 times the maximum speed. BEARINGS Bearings shall be heavy duty, grease lubricated, anti-friction flange ball or roller, self-aligning, pillow block type and selected for a minimum average bearing life (AFBMA L-50) in excess of 200,000 hours at the maximum fan RPM. All bearings shall be provided with pre-filled factory extended lubrication lines terminating at the housing exterior to facilitate bearing relubrication without gaining access inside the ductwork. DRIVE The fan shall be equipped with a (fixed/adjustable) pitch V-belt drive selected to operate the fan at the correct operational RPM. The V-belt drive shall consist of cast iron sheaves and anti-static conducting belts and shall be selected with a (1.2/1.5) service factor based upon the required brake horsepower of the fan. The complete fan shaft and bearing assembly shall be mounted within a steel fabricated inner cylinder. The V-belt drive assembly shall be extended through a two-piece belt fairing. The belt fairing shall be an aerodynamically shaped tube designed to maximize fan efficiency, minimize air blockage and reduce noise generation. The belt fairing shall be welded continuously to both the inner cylinder that houses the fan shaft and bearings and the fan housing, thus protecting and completely isolating the V-belt components from the direct blast of the airstream. MOTOR Fan motors shall be manufactured in accordance with current applicable standards of IEEE and NEMA and, where applicable, shall meet current EPACT standards. They shall be foot-mounted, NEMA standard, (ODP, TEFC, Explosion-Proof), continuous duty, ball bearing type with class ( B, F ) insulation and of cast iron construction when commercially available. FINISH AND COATING The entire fan assembly, excluding the shaft, shall be thoroughly degreased and deburred before application of a rust-preventative primer. After the fan is completely assembled, a finish coat of paint shall be applied to the entire assembly. The fan shaft shall be coated with a petroleum-based rust protectant. Aluminum components shall be unpainted. ACCESSORIES When specified, accessories shall be provided by Aerovent to maintain one source responsibility. FACTORY RUN TEST All fans with motors and drives mounted by Aerovent shall be completely assembled and test run as a unit at the specified operating speed prior to shipment. Each wheel shall be statically and dynamically balanced in accordance with ANSI/AMCA Balance Quality and Vibration Levels for Fans to Fan Application Category BV-3, Balance Quality Grade G6.3. Balance readings shall be taken by electronic type equipment in the axial, vertical, and horizontal directions on each of the bearings. Records shall be maintained and a written copy shall be available upon request. GUARANTEE The manufacturer shall guarantee the workmanship and materials for its VSBD and Vaneaxial or TSBD and Tubeaxial Fans for at least one (1) year from startup or eighteen (18) months from shipment, whichever occurs first. Aerovent

16 Quality Air Handling Equipment AXIAL FLOW Tubeaxial Panel Fan Mancooler Ring Fan Tubeaxial Adjustable Pitch VANEAXIAL Type VT Type W Adjustable Pitch Type VTF Fiberglass Type B Higher Pressure Axico Anti-Stall CENTRIFUGAL Industrial Exhaust CB / CBA Series 14 High Pressure Centaxial Pressure Blower ROOF VENTILATOR Upblast Propeller Upblast Axial Tu-WAY Fiberglass PRV Centrifugal AIR HEATER Gas-Fired Air Make-Up Steam Air Make-Up Door Air Heater WARRANTY Aerovent equipment is guaranteed to deliver its rated output, if properly installed and operated under normal conditions. Aerovent will correct by repair, replacement, or issuance of credit at our option, F.O.B. our plant, defects in material or workmanship which may develop under normal and proper use within eighteen (18) months after date of shipment from our factory, if purchaser gives us notice within ten (10) days of discovering such defects. The correction of these defects by repair, replacement, or issuance of credit shall constitute fulfillment of all obligation to purchaser. (NOTE: We will not assume expense or liability for repairs made outside our factory without prior written consent.) TM PP07/08

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